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Dihydroflavin-driven adenosylation of 4-coordinate Co(II) corrinoids: are cobalamin reductases enzymes or electron transfer proteins?

J Biol Chem.. 2010-01;  285(5):2911 - 2917
Mera PE, Escalante-Semerena JC. Department of Bacteriology, University of Wisconsin, Madison, Wisconsin 53726-1521, USA.
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摘要

The identity of the source of the biological reductant needed to convert cobalamin to its biologically active form adenosylcobalamin has remained elusive. Here we show that free or protein-bound dihydroflavins can serve as the reductant of Co(2+)Cbl bound in the active site of PduO-type ATP-dependent corrinoid adenosyltransferase enzymes. Free dihydroflavins (dihydroriboflavin, FMNH(2), and FADH(2)) effectively drove the adenosylation of Co(2+)Cbl by the human and bacterial PduO-type enzymes at very low concentrations (1 microm). These data show that adenosyltransferase enzymes lower the thermodynamic barrier of the Co(2+) --> Co(+) reduction needed for the formation of the unique organometalic Co-C bond of ... More

关键词

Enzymes/Catalysis; Enzymes/Flavin; Enzymes/Reductase; Metabolism; Vitamins and Cofactors/Adenosylcobalamin; Electron Transfer Proteins; Redox Potential